Gas Insulated Test Transformer
HGTS 1000KV/670KVA SF6 Gas Insulated Test Transformer
The HGTS series represents the pinnacle of ultra-high voltage testing technology, combining 1000KV capability with 670KVA capacity in a tank-type SF6-insulated design for maximum reliability and safety.
Technical Specifications
Electrical Parameters
Rated Capacity: 670kVA
HV Output: 500KV or 1000KV
Output Current: 0.67A
Frequency: 50Hz
Performance Metrics
Waveform Distortion: ≤3%
Impedance Voltage: ≤15%
Insulation: SF6 gas
No-load Current: <10%
Dual-Voltage Operation Modes
Serial Connection Mode
Output: 500KV/0.67A
Best For: Extended duration tests
Applications: Cable testing, component evaluation
Parallel Connection Mode
Output: 1000KV/0.67A
Best For: Ultra-HV withstand tests
Applications: GIS testing, insulation research
Advanced Safety Features
5/5 CT Monitoring System: Continuous HV current measurement with 1:1 ratio for precise protection
Tank-Type Design: Robust SF6 containment for maximum insulation reliability
Earthed HV Terminal: Ensures operator safety during all test procedures
Performance Characteristics
Parameter | Value | Industry Comparison |
---|---|---|
Waveform Distortion | ≤3% | Standard: ≤5% |
Impedance Voltage | ≤15% | Typical: 20-25% |
No-load Current | <10% | Average: 10-15% |
Industrial Applications
Power Transmission
Ultra-HV cable testing
Transformer factory tests
GIS equipment validation
Research & Development
Insulation material studies
High-voltage component R&D
Advanced electrical research
Why Choose This Transformer?
Dual-Voltage Flexibility: Single unit replaces multiple test systems
Precision Performance: Laboratory-grade ≤3% waveform accuracy
Industrial Reliability: Tank-type construction withstands harsh environments
Safety Assurance: Integrated CT monitoring and SF6 insulation
Future-Ready: 1000KV capability meets next-gen testing needs
Technical Support Available
Our engineering team provides comprehensive support for installation, operation, and maintenance of your HGTS test transformer system.